Integrated Wellington region land transport resilience study

P. Brabhaharan
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Abstract

Wellington region’s transport network has poor resilience to natural hazards, given the rugged terrain, high seismicity and wet climate.  This exposes the land access to the region and the capital city to be potentially cut off from the rest of New Zealand for several months, and its cities to be isolated from each other.  This paper reports on a pioneering integrated resilience study of the entire land transport system in the region provided by the state highways, principal and arterial local roads and the railway system.  The study considered resilience risks from a range of natural hazards (earthquake, storm and tsunami) using the metrics of availability and outage. The resilience risks and the relative importance of the routes were used to assess the criticality of these risks for future investment in resilience enhancement.  The criticality also considered risks to other lifeline utilities - power, water and telecommunications that share these transport corridors. The combined criticality was used to prioritise these resilience risks. The highest criticality resilience risks were classified into extreme, very high and high levels. The extreme criticality risks identified were the state highway between Ngauranga and Petone and the adjacent Ngauranga interchange between the two State Highways 1 and 2, which together provide access between Wellington, Hutt and Porirua cities. A range of very high risks were identified across the region which included both state highways and local roads.  This novel resilience study provided the basis for a subsequent business case for future investment to enhance the resilience of the region’s transport network.
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综合惠灵顿地区陆地运输弹性研究
考虑到崎岖的地形、高地震活动和潮湿的气候,惠灵顿地区的交通网络对自然灾害的抵御能力很差。这使得通往该地区和首都的土地可能会在几个月内与新西兰其他地区隔绝,其城市之间也会相互隔离。本文报告了一项开创性的综合弹性研究,研究了该地区由国家公路、主要和干线地方道路以及铁路系统提供的整个陆地运输系统。该研究使用可用性和中断指标考虑了来自一系列自然灾害(地震、风暴和海啸)的恢复风险。利用弹性风险和路径的相对重要性来评估这些风险对未来弹性增强投资的重要性。危急程度还考虑了其他生命线公用事业的风险——电力、水和电信共享这些运输走廊。综合临界度用于对这些弹性风险进行优先排序。最高临界弹性风险分为极端、非常高和高三个级别。确定的极端危险风险是Ngauranga和Petone之间的国道,以及相邻的两条国道1号和2号之间的Ngauranga交汇处,这两条国道共同提供惠灵顿、赫特和波里鲁瓦城市之间的通道。整个地区都有一系列非常高的风险,包括州公路和地方公路。这项新颖的弹性研究为未来投资增强该地区交通网络弹性的后续商业案例提供了基础。
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Integrated Wellington region land transport resilience study Improving Wellington region’s resilience through integrated infrastructure resilience investments ‘End to end’ linkage structure for integrated impact assessment of infrastructure networks under natural hazards Strengthening heritage tunnels to enhance the resilience of Wellington’s transport network Resilience of infrastructure networks
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